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Impact toughness of a 10% Cr steel with high boron and low nitrogen contents

机译:高硼低氮含量的10%Cr钢的冲击韧性

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The effect of temperature on the impact toughness and fracture behavior of a 10% Cr-2% W-0.7% Mo-3% Co-0.05% Nb-0.2% V-0.008% B-0.003% N (all in wt%) steel was studied. The ductile-brittle transition (DBT) occurs at 10 degrees C. At the DBT temperature (DBTT), the onset of unstable crack propagation occurs at the maximum load. The embrittlement is attributed to the onset of unstable crack propagation at stresses below the general yielding. A decrease in nitrogen content and an increase in boron content lead to the formation of chains of closely spaced M23C6 carbides at lath boundaries. The formation of numerous voids at carbide-matrix boundaries results in the appearance of crack with critical dimension after stable crack propagation over a very short distance. As a result, the energy of the stable crack propagation is low and the embrittlement takes place at relatively high temperature.
机译:温度对10%Cr-2%W-0.7%Mo-3%Co-0.05%Nb-0.2%V-0.008%B-0.003%N(均以wt%计)的冲击韧性和断裂行为的影响对钢进行了研究。延性脆性转变(DBT)发生在10摄氏度。在DBT温度(DBTT)下,不稳定裂纹扩展的开始出现在最大载荷下。脆性归因于在低于一般屈服的应力下开始不稳定的裂纹扩展。氮含量的减少和硼含量的增加会导致在板条边界处形成间距紧密的M23C6碳化物链。在很短的距离内稳定的裂纹扩展后,在碳化物-基体边界处形成大量空隙,导致出现具有临界尺寸的裂纹。结果,稳定的裂纹扩展的能量低,并且在相对较高的温度下发生脆化。

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